冯怡
现任职称/职务:校聘副教授,博导
通讯地址:
邮政编码:300130
电子邮箱:luckyii0512@163.com
联系电话:(办公电话或手机)
研究领域
1)新型纳米结构材料的可控制备及其在能源存储与转换器件中的应用研究
2)先进锂/钠离子电池电极材料的设计与制备及其电化学性能研究
3)高效析氢/析氧纳米电催化剂以及双功能电解水催化剂的研发
讲授课程
学术经历
2013.09~2019.02 韩国汉阳大学 能源工程专业,博士研究生
学术兼职
学术成就
开发了多种配位聚合物纳米晶模板,创新性的采用“自模板法”设计和构筑了一系列高性能新型微纳结构电化学能量存储与转换材料,应用于锂离子电池和电催化分解水,取得了一系列创新性成果,以第一作者发表JCR一区论文5篇,其中ESI高被引论文3篇,论文总被引用500余次
1. Feng Yi, Yu Xin-Yao, Paik Ungyu. Nickel cobalt phosphides quasi-hollow nanocubes as an efficient electrocatalyst for hydrogen evolution in alkaline solution. Chemical Communications, 2016, 52(8): 1633-1636.
2. Feng Yi, Yu Xin-Yao, Paik Ungyu. Formation of Co3O4 microframes from MOFs with enhanced electrochemical performance for lithium storage and water oxidation. Chemical Communications, 2016, 52(37): 6269-6272.
3. Yu Xin-Yao,# Feng Yi,# Jeon Y, et al. Formation of Ni-Co-MoS2 nanoboxes with enhanced electrocatalytic activity for hydrogen evolution. Advanced Materials, 2016, 28(40): 9006-9011.
4. Feng Yi, Han HyukSu, Kim Kang Min, Dutta Soumen, Song Taeseup. Self-templated Prussian blue analogue for efficient and robust electrochemical water oxidation. Journal of Catalysis, 2018,369,168-174.
5. Yu Xin-Yao, Feng Yi, Guan Buyuan, Lou Xiong Wen, Paik Ungyu. Carbon coated porous nickel phosphides nanoplates for highly efficient oxygen evolution reaction. Energy & Environmental Science, 2016, 9(4): 1246-1250.
6. Dutta Soumen, Indra Arindam, Feng Yi, Song Taeseup, Paik Ungyu. Self-supported nickel iron layered double hydroxide-nickel selenide electrocatalyst for superior water splitting activity. ACS Applied Materials & Interfaces, 2017, 9(39): 33766-33774.
科研项目
论著专利
招生方向
0703化学